Capture of exocomets and the erosion of the Oort cloud due to stellar encounters in the Galaxy
arXiv:1710.05866 · doi:10.1093/mnras/stx2721
Abstract
The Oort cloud (OC) probably formed more than 4Gyr ago and has been moving with the Sun in the Galaxy since, exposed to external influences, most prominently to the Galactic tide and passing field stars. Theories suggest that other stars might posses exocomets distributed similarly to our OC. We study the erosion of the OC and the possibility for capturing exocomets during the encounters with such field stars. We carry out simulations of flybys, where both stars are surrounded by a cloud of comets. We measure how many exocomets are transferred to the OC, how many OC's comets are lost, and how this depends on the other star's mass, velocity and impact parameter. Exocomets are transferred to the OC only during relatively slow (kms) and close (AU) flybys and these are expected to be extremely rare. Assuming that all passing stars are surrounded by a cloud of exocomets, we derive that the fraction of exocomets in the OC has been about --. Finally we simulate the OC for the whole lifetime of the Sun, taking into account the encounters and the tidal effects. The OC has lost 25--65% of its mass, mainly due to stellar encounters, and at most 10% (and usually much less) of its mass can be captured. However, exocomets are often lost shortly after the encounter that delivers them, due to the Galactic tide and consecutive encounters.
Accepted for publication in MNRAS. 16 pages, 10 figures
References in corpus (8)
- Riding the Spiral Waves: Implications of Stellar Migration for the Properties of Galactic Disks
- Sedna and the Oort Cloud Around a Migrating Sun
- The Formation of the Oort Cloud in Open Cluster Environments
- Injection of Oort Cloud Comets: The Fundamental Role of Stellar Perturbations
- 24.77 Pflops on a Gravitational Tree-Code to Simulate the Milky Way Galaxy with 18600 GPUs
- Eight billion asteroids in the Oort cloud
- The rate of stellar encounters along a migrating orbit of the Sun
- Exploring the role of the Sun's motion in terrestrial comet impacts
Cited by in corpus (17)
- Origin and evolution of long-period comets
- Solar System Physics for Exoplanet Research
- Tidal fragmentation as the origin of 1I/2017 U1 ('Oumuamua)
- `Oumuamua as a messenger from the Local Association
- Oort cloud Ecology II: Extra-solar Oort clouds and the origin of asteroidal interlopers
- Oort cloud Ecology II: The chronology of the formation of the Oort cloud
- A hypothesis for the rapid formation of planets
- A search for the origin of the interstellar comet 2I/Borisov
- Capture of interstellar objects: a source of long-period comets
- Significant interstellar object production by close stellar flybys
- The stability in the most external region of the Oort Cloud: The evolution of the ejected comets
- Oort cloud perturbations as a source of hyperbolic Earth impactors
- Stellar encounters with giant molecular clouds
- The Case for an Early Solar Binary Companion
- Oumuamuas passing through molecular clouds
- Oort Cloud Ecology. III. The Sun left the parent star cluster shortly after the giant planets formed
- Preliminary Evidence That Protoplanetary Disks Eject More Mass Than They Retain